A Fast Responsive Ultraviolet Sensor from mSILAR-Processed Sn-ZnO
Author | Thomas, Deepu |
Author | Vijayalakshmi, K. A. |
Author | Sadasivuni, Kishor Kumar |
Author | Thomas, Ajith |
Author | Ponnamma, Deepalekshmi |
Author | Cabibihan, John-John |
Available date | 2020-09-24T08:11:57Z |
Publication Date | 2017 |
Publication Name | Journal of Electronic Materials |
Resource | Scopus |
ISSN | 3615235 |
Abstract | Microwave-assisted successive ionic layer adsorption and reaction was employed to synthesize Sn-ZnO (tin-doped zinc oxide), and its sensitivity to ultraviolet radiation is compared with zinc oxide (ZnO). The sensing films were made by the dip-coated method on an indium titanium oxide glass substrate, and the sensing performance was monitored using the 300-700 nm wavelength of UV-Vis light. Excellent sensitivity and recovery were observed for the Sn-doped ZnO sensor device, especially at 380 nm wavelength of ultraviolet (UV) light (response and recovery time 2.26 s and 8.63 s, respectively, at 5 V bias voltage). The variation in photocurrent with respect to dark and light illumination atmosphere was well illustrated based on the Schottky and inter-particle network effects. Doping of Sn on ZnO nanoparticles varied the surface roughness and crystallite size as observed from scanning electron microscopic and x-ray diffraction studies. Here, we demonstrate a simple and economical fabrication technique for designing a high-performance UV light sensor. The developed device works at room temperature with high durability and stability. 1 2017, The Minerals, Metals & Materials Society. |
Language | en |
Publisher | Springer New York LLC |
Subject | doping Electronics metal nanoparticles mSILAR optical sensor |
Type | Article |
Pagination | 6480-6487 |
Issue Number | 11 |
Volume Number | 46 |
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Center for Advanced Materials Research [1378 items ]
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Mechanical & Industrial Engineering [1396 items ]